<?xml version="1.0" encoding="ISO-8859-1"?>
<rss version="2.0">
    <channel>
        <title>MERLOT Search - materialType=Online%20Course&amp;category=2731&amp;nosearchlanguage=</title>
        <link>http://www.merlot.org:80/merlot/</link>
        <description>A search of MERLOT materials</description>
        <copyright>Copyright 1997-2013 MERLOT. All rights reserved.</copyright>
        <pubDate>Thu, 23 May 2013 10:53:28 PDT</pubDate>
        <lastBuildDate>Thu, 23 May 2013 10:53:28 PDT</lastBuildDate>
        <image>
            <title>MERLOT Search - materialType=Online%20Course&amp;category=2731&amp;nosearchlanguage=</title>
            <url>http://www.merlot.org:80/merlot/images/merlot.gif</url>
            <link>http://www.merlot.org:80/merlot/</link>
            <width>44</width>
            <height>34</height>
        </image>
        <item>
            <title>Introduction to Solid State Chemistry</title>
            <link>http://www.merlot.org/merlot/viewMaterial.htm?id=577613</link>
            <description>Introduction to Solid State Chemistry is a one-semester college course on the principles of chemistry. This unique and popular course satisfies MIT&apos;s general chemistry degree requirement, with an emphasis on solid-state materials and their application to engineering systems. You&apos;ll begin with an exploration of the fundamental relationship between electronic structure, chemical bonding, and atomic order, then proceed to the chemical properties of &quot;aggregates of molecules,&quot; including crystals, metals, glasses, semiconductors, solutions and acid-base equilibria, polymers, and biomaterials. Real-world examples are drawn from industrial practice (e.g. semiconductor manufacturing), energy generation and storage (e.g. automobile engines, lithium batteries), emerging technologies (e.g. photonic and biomedical devices), and the environmental impact of chemical processing (e.g. recycling glass, metal, and plastic).</description>
        </item>
        <item>
            <title>6.152J / 3.155J Micro/Nano Processing Technology</title>
            <link>http://www.merlot.org/merlot/viewMaterial.htm?id=680899</link>
            <description>This course introduces the theory and technology of micro/nano fabrication. Lectures and laboratory sessions focus on basic processing techniques such as diffusion, oxidation, photolithography, chemical vapor deposition, and more. Through team lab assignments, students are expected to gain an understanding of these processing techniques, and how they are applied in concert to device fabrication. Students enrolled in this course have a unique opportunity to fashion and test micro/nano-devices, using modern techniques and technology.</description>
        </item>
        <item>
            <title>Freshman Organic Chemistry</title>
            <link>http://www.merlot.org/merlot/viewMaterial.htm?id=554718</link>
            <description>This is the first semester in a two-semester introductory course focused on current theories of structure and mechanism in organic chemistry, their historical development, and their basis in experimental observation. The course is open to freshmen with excellent preparation in chemistry and physics, and it aims to develop both taste for original science and intellectual skills necessary for creative research.</description>
        </item>
    </channel>
</rss>
